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(528496) TWENTY FIVE YEARS OF SONIC INJECTION PLANT TRIALS AND IMPLEMENTATION - LET'S TAKE STOCK

机译:(528496)Sonic注塑植物试验和实施的二十五年 - 让我们拿走库存

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Back in 1995, Air Liquide and Union Miniere presented a joint paper at the Copper 95 - Cobre 95 Conference in Santiago, Chile, describing the first full scale plant trials of shrouded sonic injection in a Hoboken converter at the Hoboken smelter in Belgium. Almost a quarter of a century later, the technology known as ALSI, or Air Liquide Shrouded Injection, has been tested or commercially implemented in several copper and nickel smelters. Despite these successes, the copper industry did not adopt it widely in the same manner the steel industry adopted the Savard-Lee tuyere in the 1970s and beyond, not even in the way the lead industry adopted it with the Queneau-Schuhmann-Lurgi, or QSL, process. The development and implementation of bottom-blowing smelting and converting technologies in China in the last ten years, however, changed the industry's perception that high- and ultra-high oxygen injection in copper smelting and converting was indeed possible under specific process conditions. In this paper, I retrace the key learnings of my journey with sonic injection over the twenty five years from my humble beginnings in my early years with Air Liquide, through plant trials and technology implementation in the late 1990s and into the first decade of the new millennium, and ultimately, to the most conclusive proof that the sonic injection design methodology I established is valid, and the calculation tools I developed are accurate. I conclude by sharing my thoughts about whether the deployment of the Savard and Lee legacy within the nonferrous industry was just a pipe dream or whether it will become a reality.
机译:回来于1995年,液化空气和联盟Miniere在智利圣地亚哥的Cobre 95次会议上展示了一篇在Cobre 95会议的联合纸,描述了比利时霍博肯冶炼厂呼吸换算中的第一个全面植物试验。几乎四分之一世纪之后,已知为Alsi或Air Liquide笼罩的技术,已经在几种铜和镍冶炼厂进行了测试或商业化。尽管取得了这些成功,但铜业的钢铁行业在20世纪70年代及以后采用萨马德 - 李风口的同样地采用它,甚至在铅行业采用Queneau-Schuhmann-lurgi的方式, QSL,过程。然而,在过去的十年中,中国在中国的底部吹熔和转换技术的开发和实施改变了该行业的看法,即在特定的工艺条件下确实可能在铜冶炼和转化中进行高和超高氧注射。在本文中,我追溯了我在205年代早期的二十五年内与Song注射的旅程的关键学习,通过液化液体,通过植物试验和技术实施在20世纪90年代后期,进入了新的新的十年千禧年,最终,最终,最重要的证据证明我建立的声波注射设计方法是有效的,我开发的计算工具是准确的。我通过分享我的思考,我对有色行业的部署和李遗留在有色的行业中是否只是一个管道梦想或它是否成为现实。

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